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Electron Paramagnetic Resonance Imaging of the Spatial Distribution of Free Radicals in PMR-15 Polyimide Resins

机译:PMR-15聚酰亚胺树脂中自由基的空间分布的电子顺磁共振成像

摘要

Prior studies have shown that free radicals generated by heating polyimides above 300 C are stable at room temperature and are involved in thermo-oxidative degradation in the presence of oxygen gas. Electron Paramagnetic Resonance Imaging (EPRI) is a technique to determine the spatial distribution of free radicals. X-band (9.5 GHz) EPR images of PMR-15 polyimide were obtained with a spatial resolution of about 0.18 mm along a 2 mm dimension of the sample. In a polyimide sample that was not thermocycled, the radical distribution was uniform along the 2 mm dimension of the sample. For a polyimide sample that was exposed to thermocycling in air for 300 one-hour cycles at 335 C, one-dimensional EPRI showed a higher concentration of free radicals in the surface layers than in the bulk sample. A spectral-spatial two-dimensional image showed that the EPR lineshape of the surface layer remained the same as that of the bulk. These EPRI results suggest that the thermo-oxidative degradation of PMR-15 resin involves free radicals present in the oxygen-rich surface layer.
机译:先前的研究表明,在室温下加热300℃以上的聚酰亚胺所产生的自由基在室温下是稳定的,并在氧气存在下参与热氧化降解。电子顺磁共振成像(EPRI)是一种确定自由基的空间分布的技术。获得了PMR-15聚酰亚胺的X波段(9.5 GHz)EPR图像,其沿2 mm尺寸的空间分辨率约为0.18 mm。在未热循环的聚酰亚胺样品中,自由基分布沿样品的2 mm尺寸均匀。对于在335°C下暴露于空气中300个一小时循环的热循环的聚酰亚胺样品,一维EPRI显示的表面层中的自由基浓度高于整体样品中的自由基浓度。光谱空间二维图像显示,表层的EPR线形保持与本体相同。这些EPRI结果表明,PMR-15树脂的热氧化降解涉及存在于富氧表面层中的自由基。

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